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改变细胞外[K⁺]:一种区分灌注大鼠肠系膜动脉床中与内皮依赖性超极化因子(EDHF)和内皮衍生一氧化氮(EDNO)相关机制的功能性方法。

Varying extracellular [K+]: a functional approach to separating EDHF- and EDNO-related mechanisms in perfused rat mesenteric arterial bed.

作者信息

Adeagbo A S, Triggle C R

机构信息

Department of Pharmacology and Therapeutics, University of Calgary, Alberta, Canada.

出版信息

J Cardiovasc Pharmacol. 1993 Mar;21(3):423-9.

PMID:7681503
Abstract

We describe a simple, functional approach to defining the relative contribution of endothelium-dependent hyperpolarization (presumably mediated by a factor, EDHF) and endothelium-derived nitric oxide (EDNO) to acetylcholine (ACh) and histamine relaxations of isolated perfused rat mesenteric resistance arterial bed. In physiologic salt solution (PSS), ACh- and histamine-induced vasodilations of cirazoline-preconstricted mesenteric arterial bed were only partially attenuated by 50 microM Nw-nitro-L-arginine methyl ester (L-NAME). The L-NAME-resistant component was abolished by 0.5 microM apamin but not by 250 nM dendrotoxin or 10 microM glyburide, thus indicating a role for apamin-sensitive K+ channels in mediating the effects of the putative EDHF. Changing membrane potential by varying [K+] decreased L-NAME-resistant vasodilation, and showed a modest L-NAME-induced increase in the basal perfusion pressure that was not observable in normal PSS. Vasodilator responses during cirazoline-induced tonus in 20 mM K+ and normal PSS were superimposable, but responses to ACh and histamine in 20 mM K+ were profoundly more sensitive to L-NAME than were those in normal PSS media. ACh responses during 20-mM K+ PSS perfusion and presumably mediated by EDNO and those resistant to L-NAME and putatively mediated by EDHF were antagonized by graded concentrations of p-fluorohexahydro-siladifenidol (p-F-HHSiD), but not pirenzepine.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

我们描述了一种简单、实用的方法,用于确定内皮依赖性超极化(可能由一种因子EDHF介导)和内皮衍生一氧化氮(EDNO)对分离灌注的大鼠肠系膜阻力动脉床中乙酰胆碱(ACh)和组胺舒张作用的相对贡献。在生理盐溶液(PSS)中,50微摩尔Nw-硝基-L-精氨酸甲酯(L-NAME)仅部分减弱了可乐定预收缩的肠系膜动脉床中ACh和组胺诱导的血管舒张。L-NAME抗性成分被0.5微摩尔蜂毒明肽消除,但未被250纳摩尔树眼镜蛇毒素或10微摩尔格列本脲消除,这表明对蜂毒明肽敏感的钾通道在介导假定的EDHF的作用中发挥作用。通过改变[K+]来改变膜电位可降低L-NAME抗性血管舒张,并显示L-NAME诱导基础灌注压有适度升高,这在正常PSS中未观察到。可乐定诱导张力期间在20毫摩尔K+和正常PSS中的血管舒张反应是可叠加的,但在20毫摩尔K+中对ACh和组胺的反应比在正常PSS培养基中对L-NAME更敏感得多。在20毫摩尔K+ PSS灌注期间由EDNO介导的ACh反应以及对L-NAME有抗性且假定由EDHF介导的反应被不同浓度的对氟六氢硅二苯胺(p-F-HHSiD)拮抗,但未被哌仑西平拮抗。(摘要截断于250字)

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